Cargando…

Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations

Mutations in the SNX14 gene cause spinocerebellar ataxia, autosomal recessive 20 (SCAR20) in both humans and dogs. Studies implicating the phenotypic consequences of SNX14 mutations to be consequences of subcellular disruption to autophagy and lipid metabolism have been limited to in vitro investiga...

Descripción completa

Detalles Bibliográficos
Autores principales: Bryant, Dale, Seda, Marian, Peskett, Emma, Maurer, Constance, Pomeranz, Gideon, Ghosh, Marcus, Hawkins, Thomas A., Cleak, James, Datta, Sanchari, Hariri, Hanaa, Eckert, Kaitlyn M., Jafree, Daniyal J., Walsh, Claire, Demetriou, Charalambos, Ishida, Miho, Alemán-Charlet, Cristina, Vestito, Letizia, Seselgyte, Rimante, McDonald, Jeffrey G., Bitner-Glindzicz, Maria, Hemberger, Myriam, Rihel, Jason, Teboul, Lydia, Henne, W. Mike, Jenkins, Dagan, Moore, Gudrun E., Stanier, Philip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7427099/
https://www.ncbi.nlm.nih.gov/pubmed/32792680
http://dx.doi.org/10.1038/s41598-020-70797-2
_version_ 1783570824160083968
author Bryant, Dale
Seda, Marian
Peskett, Emma
Maurer, Constance
Pomeranz, Gideon
Ghosh, Marcus
Hawkins, Thomas A.
Cleak, James
Datta, Sanchari
Hariri, Hanaa
Eckert, Kaitlyn M.
Jafree, Daniyal J.
Walsh, Claire
Demetriou, Charalambos
Ishida, Miho
Alemán-Charlet, Cristina
Vestito, Letizia
Seselgyte, Rimante
McDonald, Jeffrey G.
Bitner-Glindzicz, Maria
Hemberger, Myriam
Rihel, Jason
Teboul, Lydia
Henne, W. Mike
Jenkins, Dagan
Moore, Gudrun E.
Stanier, Philip
author_facet Bryant, Dale
Seda, Marian
Peskett, Emma
Maurer, Constance
Pomeranz, Gideon
Ghosh, Marcus
Hawkins, Thomas A.
Cleak, James
Datta, Sanchari
Hariri, Hanaa
Eckert, Kaitlyn M.
Jafree, Daniyal J.
Walsh, Claire
Demetriou, Charalambos
Ishida, Miho
Alemán-Charlet, Cristina
Vestito, Letizia
Seselgyte, Rimante
McDonald, Jeffrey G.
Bitner-Glindzicz, Maria
Hemberger, Myriam
Rihel, Jason
Teboul, Lydia
Henne, W. Mike
Jenkins, Dagan
Moore, Gudrun E.
Stanier, Philip
author_sort Bryant, Dale
collection PubMed
description Mutations in the SNX14 gene cause spinocerebellar ataxia, autosomal recessive 20 (SCAR20) in both humans and dogs. Studies implicating the phenotypic consequences of SNX14 mutations to be consequences of subcellular disruption to autophagy and lipid metabolism have been limited to in vitro investigation of patient-derived dermal fibroblasts, laboratory engineered cell lines and developmental analysis of zebrafish morphants. SNX14 homologues Snz (Drosophila) and Mdm1 (yeast) have also been conducted, demonstrated an important biochemical role during lipid biogenesis. In this study we report the effect of loss of SNX14 in mice, which resulted in embryonic lethality around mid-gestation due to placental pathology that involves severe disruption to syncytiotrophoblast cell differentiation. In contrast to other vertebrates, zebrafish carrying a homozygous, maternal zygotic snx14 genetic loss-of-function mutation were both viable and anatomically normal. Whilst no obvious behavioural effects were observed, elevated levels of neutral lipids and phospholipids resemble previously reported effects on lipid homeostasis in other species. The biochemical role of SNX14 therefore appears largely conserved through evolution while the consequences of loss of function varies between species. Mouse and zebrafish models therefore provide valuable insights into the functional importance of SNX14 with distinct opportunities for investigating its cellular and metabolic function in vivo.
format Online
Article
Text
id pubmed-7427099
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-74270992020-08-18 Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations Bryant, Dale Seda, Marian Peskett, Emma Maurer, Constance Pomeranz, Gideon Ghosh, Marcus Hawkins, Thomas A. Cleak, James Datta, Sanchari Hariri, Hanaa Eckert, Kaitlyn M. Jafree, Daniyal J. Walsh, Claire Demetriou, Charalambos Ishida, Miho Alemán-Charlet, Cristina Vestito, Letizia Seselgyte, Rimante McDonald, Jeffrey G. Bitner-Glindzicz, Maria Hemberger, Myriam Rihel, Jason Teboul, Lydia Henne, W. Mike Jenkins, Dagan Moore, Gudrun E. Stanier, Philip Sci Rep Article Mutations in the SNX14 gene cause spinocerebellar ataxia, autosomal recessive 20 (SCAR20) in both humans and dogs. Studies implicating the phenotypic consequences of SNX14 mutations to be consequences of subcellular disruption to autophagy and lipid metabolism have been limited to in vitro investigation of patient-derived dermal fibroblasts, laboratory engineered cell lines and developmental analysis of zebrafish morphants. SNX14 homologues Snz (Drosophila) and Mdm1 (yeast) have also been conducted, demonstrated an important biochemical role during lipid biogenesis. In this study we report the effect of loss of SNX14 in mice, which resulted in embryonic lethality around mid-gestation due to placental pathology that involves severe disruption to syncytiotrophoblast cell differentiation. In contrast to other vertebrates, zebrafish carrying a homozygous, maternal zygotic snx14 genetic loss-of-function mutation were both viable and anatomically normal. Whilst no obvious behavioural effects were observed, elevated levels of neutral lipids and phospholipids resemble previously reported effects on lipid homeostasis in other species. The biochemical role of SNX14 therefore appears largely conserved through evolution while the consequences of loss of function varies between species. Mouse and zebrafish models therefore provide valuable insights into the functional importance of SNX14 with distinct opportunities for investigating its cellular and metabolic function in vivo. Nature Publishing Group UK 2020-08-13 /pmc/articles/PMC7427099/ /pubmed/32792680 http://dx.doi.org/10.1038/s41598-020-70797-2 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Bryant, Dale
Seda, Marian
Peskett, Emma
Maurer, Constance
Pomeranz, Gideon
Ghosh, Marcus
Hawkins, Thomas A.
Cleak, James
Datta, Sanchari
Hariri, Hanaa
Eckert, Kaitlyn M.
Jafree, Daniyal J.
Walsh, Claire
Demetriou, Charalambos
Ishida, Miho
Alemán-Charlet, Cristina
Vestito, Letizia
Seselgyte, Rimante
McDonald, Jeffrey G.
Bitner-Glindzicz, Maria
Hemberger, Myriam
Rihel, Jason
Teboul, Lydia
Henne, W. Mike
Jenkins, Dagan
Moore, Gudrun E.
Stanier, Philip
Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations
title Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations
title_full Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations
title_fullStr Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations
title_full_unstemmed Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations
title_short Diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations
title_sort diverse species-specific phenotypic consequences of loss of function sorting nexin 14 mutations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7427099/
https://www.ncbi.nlm.nih.gov/pubmed/32792680
http://dx.doi.org/10.1038/s41598-020-70797-2
work_keys_str_mv AT bryantdale diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT sedamarian diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT peskettemma diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT maurerconstance diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT pomeranzgideon diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT ghoshmarcus diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT hawkinsthomasa diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT cleakjames diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT dattasanchari diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT haririhanaa diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT eckertkaitlynm diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT jafreedaniyalj diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT walshclaire diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT demetrioucharalambos diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT ishidamiho diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT alemancharletcristina diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT vestitoletizia diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT seselgyterimante diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT mcdonaldjeffreyg diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT bitnerglindziczmaria diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT hembergermyriam diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT riheljason diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT teboullydia diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT hennewmike diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT jenkinsdagan diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT mooregudrune diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations
AT stanierphilip diversespeciesspecificphenotypicconsequencesoflossoffunctionsortingnexin14mutations